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Live Attenuated Salmonella Vaccines Displaying Regulated Delayed Lysis and Delayed Antigen Synthesis To Confer Protection against Mycobacterium tuberculosis

机译:沙门氏菌减毒活疫苗显示规律的延迟裂解和延迟的抗原合成可提供针对结核分枝杆菌的保护

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摘要

Live recombinant attenuated Salmonella vaccine (RASV) strains have great potential to induce protective immunity against Mycobacterium tuberculosis by delivering M. tuberculosis antigens. Recently, we reported that, in orally immunized mice, RASV strains delivering the M. tuberculosis early secreted antigenic target 6-kDa (ESAT-6) protein and culture filtrate protein 10 (CFP-10) antigens via the Salmonella type III secretion system (SopE amino-terminal region residues 1 to 80 with two copies of ESAT-6 and one copy of CFP-10 [SopENt80-E2C]) afforded protection against aerosol challenge with M. tuberculosis. Here, we constructed and evaluated an improved Salmonella vaccine against M. tuberculosis. We constructed translational fusions for the synthesis of two copies of ESAT-6 plus CFP-10 fused to the OmpC signal sequence (OmpCSS-E2C) and amino acids 44 to 338 of antigen 85A (Ag85A294) flanked by the signal sequence (SS) and C-terminal peptide (CT) of β-lactamase (BlaSS-Ag85A294-BlaCT) to enable delivery via the Salmonella type II secretion system. The genes expressing these proteins were cloned as an operon transcribed from Ptrc into isogenic Asd+/MurA+ pYA3681 lysis vector derivatives with different replication origins (pBR, p15A, pSC101), resulting in pYA4890, pYA4891, and pYA4892 for SopENt80-E2C/Ag85A294 synthesis and pYA4893 and pYA4894 for OmpCSS-E2C/Ag85A294 synthesis. Mice orally immunized with the RASV χ11021 strain engineered to display regulated delayed lysis and regulated delayed antigen synthesis in vivo and harboring pYA4891, pYA4893, or pYA4894 elicited significantly greater humoral and cellular immune responses, and the RASV χ11021 strain afforded a greater degree of protection against M. tuberculosis aerosol challenge in mice than RASVs harboring any other Asd+/MurA+ lysis plasmid and immunization with M. bovis BCG, demonstrating that RASV strains displaying regulated delayed lysis with delayed antigen synthesis resulted in highly immunogenic delivery vectors for oral vaccination against M. tuberculosis infection.
机译:活重组减毒沙门氏菌疫苗(RASV)菌株具有巨大的潜力,可通过传递结核分枝杆菌抗原来诱导针对结核分枝杆菌的保护性免疫。最近,我们报告说,在口服免疫的小鼠中,通过沙门氏菌III型分泌系统递送结核分枝杆菌早期分泌的抗原靶标6-kDa(ESAT-6)蛋白和培养物滤液蛋白10(CFP-10)抗原的RASV株(具有两个拷贝的ESAT-6和一个拷贝的CFP-10 [SopENt80-E2C]的SopE氨基末端区域残基1至80提供了针对结核分枝杆菌气溶胶攻击的保护作用。在这里,我们构建并评估了针对沙门氏菌的改良沙门氏菌疫苗。我们构建了翻译融合体,用于合成两个副本的ESAT-6加CFP-10,与OmpC信号序列(OmpCSS-E2C)和抗原85A(Ag85A294)的44至338位氨基酸以及信号序列(SS)相连β-内酰胺酶(BlaSS-Ag85A294-BlaCT)的C端肽(CT)可通过II型沙门氏菌分泌系统进行递送。表达这些蛋白的基因被克隆为从Ptrc转录成具有不同复制起点的同基因Asd + / MurA + pYA3681裂解载体衍生物的操纵子(pBR,p15A,pSC101),生成用于SopENt80-E2C / Ag85A294合成的pYA4890,pYA4891和pYA4892,以及用于OmpCSS-E2C / Ag85A294合成的pYA4893和pYA4894。用RASVχ11021菌株进行口服免疫的小鼠经工程设计以在体内表现出受控的延迟裂解和受控的延迟抗原合成,并且携带pYA4891,pYA4893或pYA4894引起明显的体液和细胞免疫应答,并且RASVχ11021菌株提供了更大程度的针对与携带任何其他Asd + / MurA + 裂解质粒的RASV相比,小鼠结核分枝杆菌气雾剂攻击,并用牛分枝杆菌BCG免疫,证明RASV菌株表现出调控的延迟裂解作用,延迟的抗原合成导致了针对结核分枝杆菌感染的口服疫苗的高度免疫原性的载体。

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